Bundling assembly for glass fibers

By using diagonally arranged bundled components and a pluggable installation structure, the problems of poor flexibility and winding effect of single or multiple fiberglass rolls in fiberglass roll production are solved, achieving uniform coating and efficient winding of fiberglass.

CN223974009UActive Publication Date: 2026-03-06CHONGQING POLYCOMP INT
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing technologies struggle to simultaneously meet the production needs of single and multiple fiberglass rolls when preparing fiberglass yarn rolls, and the winding effect is unsatisfactory.

Method used

A bundling assembly was designed, including a detachably connected support and a bundler. It adopts a diagonally arranged mounting position and a plug-in mounting structure to ensure that the front and rear bundling slots of the bundler are aligned. It is suitable for the preparation of single or multiple yarn rolls, and achieves rapid installation and multi-directional adjustment through the cooperation of stainless steel hexagonal bars and hollow hexagonal tubes.

Benefits of technology

It improves the flexibility of use, ensures uniform coating and winding of glass fiber, enhances production efficiency, and solves the problems of inconvenient installation and uneven winding in the existing technology.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bundling assembly for glass fibers, which comprises a support body, a first mounting position is arranged on the left side of the support body and detachably connected with a buncher, and a second mounting position is arranged on the right side of the support body and detachably connected with a buncher. The left side and / or the right side are / is further provided with a diagonal mounting position which is arranged diagonally with the second mounting position and / or the first mounting position, and the buncher is provided with a front bunching groove and a rear bunching groove which are opposite to each other. The bundling assembly can be suitable for preparation of a single yarn roll or at least two yarn rolls, the use flexibility is improved, the two mounting positions which are arranged diagonally are arranged, so that the front-side bundling grooves and the rear-side bundling grooves of the two bunchers which are arranged diagonally are aligned in the front-back direction, and the bundling effect is improved. The arrangement mode can still ensure that all the glass fibers are in contact with the oiler so as to be uniformly coated, and meanwhile, due to the arrangement positions of the opposite angles, the winding effect of the two yarn rolls on the respective glass fibers is better.
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Description

Technical Field

[0001] This utility model relates to the field of glass fiber technology, and specifically to a bundle assembly for glass fibers. Background Technology

[0002] In the production of glass fiber filaments or yarn, multiple glass fiber filaments are bundled together by a bundler after being drawn, and then the glass fiber bundle is wound onto a spool to complete the glass fiber yarn roll.

[0003] Currently, the production of glass fiber spools primarily involves manufacturing individual spools. The process is roughly as follows: several glass fibers, cooled and drawn from multiple perforations of a spooler, are coated using an oiler. They are then bundled by two upstream bundlers arranged opposite each other, and guided by a downstream guide bundler, allowing the lower spool to wind the fibers, resulting in a single spool. The oilers are typically horizontally arranged to ensure uniform coating of all fibers as they descend. Therefore, the fibers are bundled at the same point on the same side of the two upstream bundlers. However, there are situations where it's necessary to produce two spools simultaneously. Using the same bundling method with two separate guide bundlers might result in less than ideal winding effects for both spools.

[0004] Therefore, how to provide a bundling assembly that can be applied to the preparation of a single yarn roll or multiple yarn rolls to increase the flexibility of use, while improving the winding effect when producing two yarn rolls, has become a technical problem that urgently needs to be solved by those skilled in the art. Summary of the Invention

[0005] To achieve the above objectives, this utility model provides a bundle assembly for glass fibers, the specific technical solution of which is as follows:

[0006] A fiber optic bundle assembly includes a support having a length, having opposing left and right sides in a left-right direction perpendicular to the length direction. A first mounting position is provided on the left side of the support, which is detachably connected to a bundler. A second mounting position is provided on the right side of the support, opposite the first mounting position, which is also detachably connected to a bundler. The left and / or right sides also have a diagonal mounting position arranged diagonally to the second and / or first mounting positions, which is detachably connected to a bundler. The bundler has opposing front and rear bundler slots in a front-rear direction along the length direction.

[0007] When a clusterer is installed at both the first and second mounting positions, the front clustering slots of the two clusterers are aligned along the front-back direction and / or the rear clustering slots of the two clusterers are aligned along the front-back direction; or

[0008] When a clusterer is installed at both the diagonal mounting position and the second mounting position / or the first mounting position which is diagonally arranged to the diagonal mounting position, the front clustering slots and the rear clustering slots of the two clusterers are aligned along the front-rear direction.

[0009] Preferably, there are two diagonal mounting positions, namely a third mounting position and a fourth mounting position arranged opposite each other. The third mounting position is arranged behind the first mounting position, and the fourth mounting position is arranged behind the second mounting position. The third mounting position and the second mounting position are diagonally arranged, and the fourth mounting position and the first mounting position are diagonally arranged.

[0010] Preferably, the first to fourth mounting positions each include a snap-fit ​​groove with an open top, and a snap-fit ​​body for fixing the clusterer. The snap-fit ​​body has a snap-fit ​​end, the shape of which matches the snap-fit ​​groove so that the snap-fit ​​body with the clusterer installed can be fixedly snapped into the snap-fit ​​groove.

[0011] Preferably, the first to fourth mounting positions are all hollow hexagonal tubes, and all four hollow hexagonal tubes are fixedly connected to the support body. The inner cavity of the hollow hexagonal tube forms the snap-fit ​​groove, and the snap-fit ​​end is a stainless steel hexagonal bar.

[0012] Preferably, the snap-fit ​​body includes a fixed rod having a length in the left-right direction, one end of which is fixedly connected to one end of the stainless steel hexagonal rod, and the clusterer is in the shape of a pulley and is sleeved and fixed on the fixed rod.

[0013] Preferably, the fixing rod includes two sections, a first section and a second section that are detachably connected. The first section and the second section have overlapping portions, and each overlapping portion has a corresponding through hole for the screw to pass through. The end of the first section away from the second section is fixedly connected to the stainless steel hexagonal rod, and the second section is used to support and fix the pulley-shaped cluster.

[0014] Preferably, the support body includes a first quadrilateral hollow tube and an L-shaped second quadrilateral hollow tube. One end of the first quadrilateral hollow tube is fixedly connected to the four hollow hexagonal tubes. The other end of the first quadrilateral hollow tube is snapped into the interior of one side of the L-shaped second quadrilateral hollow tube. A bolt hole is provided on one side of the second quadrilateral hollow tube for snapping into the first quadrilateral hollow tube, through which a bolt passes to fix the first quadrilateral hollow tube. The other side of the L-shaped second quadrilateral hollow tube is fixed to a hanger.

[0015] The fiber optic bundle assembly provided by this utility model has the following technical advantages:

[0016] This bundling assembly is suitable for preparing single or at least two yarn rolls, improving its flexibility. It features two diagonally arranged mounting positions, ensuring that the front and rear bundling grooves of the two diagonally arranged bundlers are aligned along the front-to-back direction. This arrangement guarantees that all glass fibers contact the oiler for uniform coating, while the diagonal position also improves the winding effect of the two yarn rolls on their respective glass fibers. Taking two yarn rolls as an example, in a parallel layout, the drawing machine and the spinneret are arranged at a 90-degree angle. The two yarn rolls on the winding head of the drawing machine are arranged in a straight line. Each yarn roll is about 300mm long, and the distance between the two yarn rolls is between 500-600mm. The corresponding lower bundle is located in the middle of each yarn roll to facilitate even force distribution during the yarn laying process. At the same time, the upper bundle position corresponding to the lower bundle plays a connecting role. "Connecting" requires that the yarns of the two yarn rolls be on the same plane so that the oiler can apply the same amount of oil to the two bundles. "Connecting" means that it corresponds to the two lower bundle positions respectively. Due to their positional characteristics, the two bundles experience different forces. Relative to the inner cylinder, the force exerted by the yarn on the upper bundling wheel is inward; conversely, in the outer cylinder, the force exerted by the yarn on the bundling wheel is outward. Since both bundles need to be on the same plane for even oiling, the upper bundling grooves must be used in a specific way: one uses the inner end of the groove, and the other uses the outer end. This ensures that the two bundling wheels are staggered at the center, guaranteeing that the yarn bundles are oiled on the same plane.

[0017] Preferably, four mounting positions are provided, which can be used to prepare either a single yarn roll or two yarn rolls, and can be combined in different ways. Even if a mounting position is damaged, it can be repaired without stopping production.

[0018] As a preferred option, a design combining stainless steel hexagonal bars and hollow hexagonal tubing is adopted. This plug-in installation structure makes the installation process faster and more convenient, solving the defects of the existing technology where "the components are fastened with bolts, requiring multiple bolts for the assembly of the entire part, resulting in long installation and disassembly times, inconvenient operation, and low work efficiency." Furthermore, the plug-in fit of the hexagonal bars ensures that the two clusters can be adjusted in multiple directions relative to each other, such as six directions within a 360° plane, which can adapt to different working conditions.

[0019] Preferably, the fixing rod comprises two sections, a first section and a second section, which are detachably connected, allowing for fine-tuning of the position between the two clusterers. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of a specific embodiment of the fiber optic bundle assembly provided by this utility model.

[0021] Figure 2 This is a schematic diagram of different orientations of the relevant process layout for using this fiber optic bundle assembly.

[0022] Figure 1-2 The labels in the attached figures are as follows:

[0023] 1. Bundler, 2. Hollow hexagonal tube, 3. Stainless steel hexagonal bar, 4. First section, 5. Second section, 6. Screw, 7. First quadrilateral hollow tube, 8. Second quadrilateral hollow tube, 9. Guided bundler, 10. Slot plate, 11. Oiler. Detailed Implementation

[0024] like Figure 1-2 As shown, Figure 1 This is a schematic diagram of a specific embodiment of the fiber optic bundle assembly provided by this utility model. Figure 2 This is a schematic diagram of different orientations of the relevant process layout for using this fiber optic bundle assembly.

[0025] Combination Figure 1 This utility model provides a fiber optic bundle assembly, including a support body with a length, having a left side and a right side opposite each other, the left-right direction being perpendicular to the length direction. The left side of the support body is provided with a first mounting position, which can be detachably connected to a bundler 1. The right side of the support body opposite the first mounting position is provided with a second mounting position, which can be detachably connected to a bundler 1. The left side and / or the right side are also provided with a diagonal mounting position arranged diagonally to the second mounting position and / or the first mounting position, which can be detachably connected to a bundler 1. The bundler 1 has a front bundler groove and a rear bundler groove opposite each other, the front-back direction being along the length direction.

[0026] When a clusterer 1 is installed at both the first and second mounting positions, the front clustering slots of the two clusterers 1 are aligned along the front-back direction and / or the rear clustering slots of the two clusterers 1 are aligned along the front-back direction; or

[0027] When a clusterer 1 is installed at both the diagonal mounting position and the second mounting position / or the first mounting position which is diagonally arranged to the diagonal mounting position, the front and rear clustering slots of the two clusterers 1 are aligned along the front-rear direction.

[0028] This bundling assembly is suitable for preparing single yarn rolls or at least two yarn rolls, improving its flexibility. It features two diagonally arranged mounting positions, ensuring that the front and rear bundling grooves of the two diagonally arranged bundlers 1 are aligned along the front-to-back direction. This arrangement guarantees that all glass fibers contact the oiler 11 for uniform coating, while the diagonal positioning also improves the winding effect of the two yarn rolls on their respective glass fibers. Figure 2 This is a schematic diagram of the process layout for preparing two yarn rolls from different perspectives. Several glass fibers passing through the sprue 10 pass through the bundler 1 and then through the guide bundler 9 to complete the preparation of two yarn rolls. In use, the bundler is arranged as follows: when a bundler 1 is installed at both the diagonal mounting position and the second mounting position / or the first mounting position which is diagonally arranged to the diagonal mounting position, the front bundler groove and the rear bundler groove of the two bundlers 1 are aligned along the front-back direction.

[0029] like Figure 1 As shown, in one specific embodiment, there are two diagonal mounting positions, namely a third mounting position and a fourth mounting position arranged opposite each other. The third mounting position is arranged behind the first mounting position, and the fourth mounting position is arranged behind the second mounting position. The third mounting position and the second mounting position are arranged diagonally, and the fourth mounting position and the first mounting position are arranged diagonally.

[0030] With four mounting positions, different combinations of mounting positions can be used to prepare either a single yarn roll or two yarn rolls. Even if a mounting position is damaged, it can be repaired without stopping production.

[0031] The first to fourth mounting positions each include a snap-fit ​​groove with an open top, and a snap-fit ​​body for fixing the clusterer. The snap-fit ​​body has a snap-fit ​​end, the shape of which matches the snap-fit ​​groove so that the snap-fit ​​body with the clusterer installed can be fixedly snapped into the snap-fit ​​groove.

[0032] In this specific implementation, such as Figure 1 As shown, the first to fourth mounting positions are all hollow hexagonal tubes 2, and the four hollow hexagonal tubes 2 are all fixedly connected to the support body. The inner cavity of the hollow hexagonal tube 2 forms the snap-fit ​​groove, and the snap-fit ​​end is a stainless steel hexagonal bar 3.

[0033] The design incorporates a stainless steel hexagonal bar 3 and a hollow hexagonal tube 2. This plug-in installation structure makes the installation process faster and more convenient, solving the shortcomings of existing technologies where "components are fastened with bolts, requiring multiple bolts for the entire assembly, resulting in long installation and disassembly times, inconvenient operation, and low work efficiency." Furthermore, the plug-in fit of the hexagonal bar ensures that the two clusterers 1 can be adjusted in multiple directions relative to each other, such as six directions within a 360° plane, adapting to different working conditions.

[0034] like Figure 1 As shown, the snap-fit ​​body includes a fixed rod with a length in the left-right direction. One end of the fixed rod is fixedly connected to one end of the stainless steel hexagonal rod 3. The clusterer 1 is in the shape of a pulley and is sleeved and fixed on the fixed rod.

[0035] In one specific implementation, such as Figure 1 As shown, the fixing rod includes two sections, a first section 4 and a second section 5 that are detachably connected. The first section 4 and the second section 5 have overlapping parts, and corresponding through holes are provided on the overlapping parts for the screw 6 to pass through. The end of the first section 4 away from the second section 5 is fixedly connected to the stainless steel hexagonal rod 3. The second section 5 is used to support and fix the pulley-shaped clusterer 1.

[0036] The fixing rod consists of two sections, a first section 4 and a second section 5, which are detachably connected, allowing for fine-tuning of the position between the two clusterers 1.

[0037] In one specific implementation, such as Figure 1 As shown, the support body includes a first quadrilateral hollow tube 7 and an L-shaped second quadrilateral hollow tube 8. One end of the first quadrilateral hollow tube 7 is fixedly connected to the four hollow hexagonal tubes 2. The other end of the first quadrilateral hollow tube 7 is snapped into the interior of one side of the L-shaped second quadrilateral hollow tube 8. A bolt hole is provided on one side of the second quadrilateral hollow tube 8 for the first quadrilateral hollow tube 7 to pass through and fix the first quadrilateral hollow tube 7. The other side of the L-shaped second quadrilateral hollow tube 8 is fixed to the hanger.

Claims

1. A bundle assembly for glass fibers, characterized by The support body has a length, opposite left and right sides, and a left side provided with a first mounting position capable of detachably connecting a cluster, a right side opposite the first mounting position provided with a second mounting position capable of detachably connecting a cluster, and a diagonal mounting position diagonally arranged opposite the second mounting position and / or the first mounting position, capable of detachably connecting a cluster, the cluster having opposite front and rear cluster grooves, and a front-rear direction along the length direction; When the first and second mounting positions are each mounted with a cluster, the front cluster grooves of the two clusters are arranged in alignment along the front-rear direction and / or the rear cluster grooves of the two clusters are arranged in alignment along the front-rear direction; or When the diagonal mounting position and the second mounting position diagonally arranged opposite the diagonal mounting position and / or the first mounting position are each mounted with a cluster, the front and rear cluster grooves of the two clusters are arranged in alignment along the front-rear direction.

2. The assembly for bundling glass fibers according to claim 1, wherein, The diagonal mounting position is two, respectively a third mounting position and a fourth mounting position diagonally arranged opposite each other, the third mounting position arranged behind the first mounting position, and the fourth mounting position arranged behind the second mounting position, the third mounting position diagonally arranged opposite the second mounting position, and the fourth mounting position diagonally arranged opposite the first mounting position.

3. The assembly for bundling glass fibers according to claim 2, wherein, The first to fourth mounting positions each include a clamping groove with an open top, and a clamping body for fixing the cluster, the clamping body having a clamping end matching the shape of the clamping groove so that the clamping body with the cluster mounted thereon can be fixedly clamped into the clamping groove.

4. The assembly for bundling glass fibers according to claim 3, wherein, The first to fourth mounting positions are each a hollow hexagonal tube, the four hollow hexagonal tubes are each fixedly connected to the support body, the inner chamber of the hollow hexagonal tube forms the clamping groove, and the clamping end is a stainless steel hexagonal rod.

5. The assembly for bundling glass fibers according to claim 4, wherein, The clamping body includes a fixed rod having a length in the left-right direction, one end of the fixed rod fixedly connected to one end of the stainless steel hexagonal rod, and the cluster is in the shape of a pulley and is fixedly sleeved on the fixed rod.

6. The assembly for bundling glass fibers according to claim 5, wherein, The fixed rod includes two sections, a first section and a second section that are detachably connected, the first section and the second section have a coincident portion, the coincident portion is provided with corresponding through holes for a screw rod to pass through, one end of the first section away from the second section is fixedly connected to the stainless steel hexagonal rod, and the second section is used to support and fix the cluster in the shape of a pulley.

7. The assembly for bundling glass fibers according to claim 6, wherein, The support body includes a first quadrangular hollow tube and a second quadrangular hollow tube in the shape of L, one end of the first quadrangular hollow tube is fixedly connected to the four hollow hexagonal tubes, the other end of the first quadrangular hollow tube is clamped into the interior of one side of the second quadrangular hollow tube in the shape of L, a bolt hole is provided on the one side of the second quadrangular hollow tube for clamping the first quadrangular hollow tube, a bolt passes through the bolt hole to fix the first quadrangular hollow tube, and the other side of the second quadrangular hollow tube in the shape of L is fixed to a hanger.